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Characterization of the pleiotropic LysR-type transcription regulator LeuO of Escherichia coli

机译:大肠杆菌抗性Lysr型转录Leuo的表征

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摘要

LeuO is a pleiotropic LysR-type transcriptional regulator (LTTR) and co-regulator of the abundant nucleoid-associated repressor protein H-NS in Gammaproteobacteria. As other LTTRs, LeuO is a tetramer that is formed by dimerization of the N-terminal DNA-binding domain (DBD) and C-terminal effector-binding domain (EBD). To characterize the Escherichia coli LeuO protein, we screened for LeuO mutants that activate the cas (CRISPR-associated/Cascade) promoter more effectively than wild-type LeuO. This yielded nine mutants carrying amino acid substitutions in the dimerization interface of the regulatory EBD, as shown by solving the EBD's crystal structure. Superimposing of the crystal structures of LeuO-EBD and LeuO-S120D-EBD suggests that the Ser120 to Asp substitution triggers a structural change that is related to effector-induced structural changes of LTTRs. Corresponding functional analyses demonstrated that LeuO-S120D has a higher DNA-binding affinity than wild-type LeuO. Further, a palindromic DNA-binding core-site and a consensus sequence were identified by DNase I footprinting with LeuO-S120D as well as with the dimeric DBD. The data suggest that LeuO-S120D mimics an effector-induced form of LeuO regulating a distinct set of target loci. In general, constitutive mutants and determining the DNA-binding specificity of the DBD-dimer are feasible approaches to characterize LTTRs of unknown function.
机译:Leuo是一种丙曲曲线菌的丰富核心相关阻遏物蛋白H-NS的含有抗血液型Lysr型转录调节剂(LTTR)和共调节器。作为其他LTTR,LeuO是通过二聚体二聚环结合结构域(DBD)和C末端效应结合结构域(EBD)的二聚化而形成的四聚体。为了表征大肠杆菌Leuo蛋白,我们筛选了Leuo突变体,其比野生型LeuO更有效地激活CAS(CRISPR相关/级联)启动子。这在调节EBD的二聚化界面中携带氨基酸取代的9个突变体,如通过求解EBD的晶体结构所示。 Leuo-EBD和Leuo-S120D-EBD的晶体结构的叠加表明,Ser120到ASP取代触发了与效应引起的LTTR结构变化有关的结构变化。相应的功能分析证明,LeuO-S120D具有比野生型LeuO更高的DNA结合亲和力。此外,通过DNA酶I与Leuo-S120D以及二聚体DBD鉴定了回文DNA结合核心位点和共有序列。数据表明,Leuo-S120D模拟了一种效应诱导的Leuo形式,调节了一组不同的目标基因座。通常,组成突变体和测定DBD二聚体的DNA结合特异性是表征未知功能的LTTR的可行方法。

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  • 来源
    《Nucleic Acids Research》 |2019年第14期|共17页
  • 作者单位

    Univ Cologne Inst Genet Zulpicher Str 47a D-50674 Cologne Germany;

    Univ Cologne Inst Biochem Zulpicher Str 47a D-50674 Cologne Germany;

    Ludwig Maximilians Univ Munchen Dept Microbiol Grosshaderner Str 2-4 D-82152 Martinsried Germany;

    Univ Cologne Inst Biochem Zulpicher Str 47a D-50674 Cologne Germany;

    Univ Cologne Inst Biochem Zulpicher Str 47a D-50674 Cologne Germany;

    Univ Cologne Inst Genet Zulpicher Str 47a D-50674 Cologne Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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